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Pulmonary tuberculosis in Kumasi, Ghana: presentation, drug resistance, molecular epidemiology and outcome of treatment.
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2002
Year
Molecular EpidemiologyProductive CoughTuberculosis PreventionDrug ResistanceMycobacterium TuberculosisClinical EpidemiologyRespiratory InfectionPreventive TreatmentTuberculosis DiagnosticsInfection ControlPublic HealthPulmonary TuberculosisTuberculosisPulmonary MedicineClinical Infectious DiseaseClinical MicrobiologyEpidemiologyGlobal HealthInternational HealthInfectious Respiratory DiseaseMedicine
To assist implementation of tuberculosis (TB) control measures, knowledge of the disease characteristics in a community is essential. This study in Kumasi, Ghana, correlates the clinical presentation, microbiology, molecular epidemiology and clinical outcome of thirty consecutively diagnosed patients with new smear-positive pulmonary TB. Several important factors that potentially promote disease transmission in the community were identified: patients had prolonged duration of productive cough prior to diagnosis (mean=4.1 months; SD=2.1); the disease was typically advanced at presentation and Ziehl-Neelson sputum smears indicated a high bacterial load (80% graded > AFB++); home accommodation was overcrowded with a mean of 3.3 other persons sleeping in the same room as the patients at night. IS6110 restriction fragment length polymorphism (RFLP) fingerprinting of 25 isolated (23 Mycobacterium tuberculosis and 2 Mycobacterium africanum) from epidemiologically unrelated cases identified 3 identical strains and 3 clusters containing 2, 4 and 8 isolates of > or =80% similarity, suggesting high rates of disease transmission. A high prevalence of primary resistance to isoniazid was found (6 out 26; 23%) but resistance to rifampicin, pyrazinamide, ethambutol, streptomycin and ciprofloxacin was not detected. Smear coversion at 2 months and final outcome of treatment with short courses chemotherapy were independent of isoniazid resistance, but the rate of treatment default was unacceptably high (37%). High rates of disease transmission, primary isoniazid resistance and treatment default all indicate poor TB control. The use of rifampicin-containing short-course chemotherapy in this community must be accompanied by adequate resources and infrastructure to ensure very stringent treatment supervision to improve case-holding and reduce the risk of multi-drug resistance.